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Structure-function studies of the magnetite-biomineralizing magnetosome-associated protein MamC. Journal of Structural Biology 52.
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Steering magnetic micropropellers along independent trajectories. Journal of Physics D: Applied Physics 54.
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Polysaccharide stabilized nanoparticles for deacidification and strengthening of paper. RSC Advances 55.
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Iron solubility, colloids and their impact on iron (oxyhydr)oxide formation from solution. Earth-Science Reviews 56.
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Biologically controlled synthesis and assembly of magnetite nanoparticles. Faraday Discussions 57.
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Crystal structure of the magnetobacterial protein MtxA C-terminal domain reveals a new sequence-structure relationship. Frontiers in Molecular Biosciences 58.
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Formation of magnetic nanoparticle chains in bacterial systems. MRS Bulletin 59.
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The combination of random mutagenesis and sequencing highlight the role of unexpected genes in an intractable organism. PLoS Genetics 60.
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From bacteria to mollusks the principles underlying the biomineralization of iron oxide materials. Angewandte Chemie International Edition 61.
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Elastic properties of magnetosome chains. New Journal of Physics 62.
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Navigation with magnetic nanoparticles: magnetotactic bacteria and magnetic micro-robots. Physica Scripta 63.
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Positioning the flagellum at the center of a dividing cell to combine bacterial division with magnetic polarity. mBio 64.
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New routes to control nanoparticle synthesis: general discussion. Faraday Discussions 66.
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Multifunctional layered magnetic composites. Beilstein Journal of Nanotechnology 67.
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Field-assisted self-assembly process: general discussion. Faraday Discussions 68.
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Magnetic iron oxide nanoparticles as MRI contrast agents - a comprehensive physical and theoretical study. Magnetohydrodynamics 69.
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The giant keyhole limpet radular teeth: a naturally-grown harvest machine. Journal of Structural Biology 70.
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The triathlon of magnetic actuation: rolling, propelling, swimming with single magnetic material. Scientific Reports 71.
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Fast magnetic micropropellers with random shapes. Nano Letters 72.
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Simultaneous Raman microspectroscopy and fluorescence imaging of bone mineralization in living zebrafish larvae. Biophysical Journal 74.
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Influence of magnetic fields on magneto-aerotaxis. PLoS One 75.
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Synthesis and characterization of gelatin-based magnetic hydrogels. Advanced Functional Materials 76.
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Probing the mechanical properties of magnetosome chains in living magnetotactic bacteria. Nano Letters 77.
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Magnetic force imaging of a chain of biogenic magnetite and Monte Carlo analysis of tip-particle interaction. Journal of Physics D: Applied Physics 78.
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Magnetite crystal orientation in magnetosome chains. Advanced Functional Materials 79.
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Distinguishing magnetic particle size of iron oxide nanoparticles with first-order reversal curves. Journal of Applied Physics 80.
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Diversity of magneto-aerotactic behaviors and oxygen sensing mechanisms in cultured magnetotactic bacteria. Biophysical Journal 81.
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Intracellular biomineralization in bacteria. Frontiers in Microbiology 82.
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Genetic dissection of the mamAB and mms6 operons reveals a gene set essential for magnetosome biogenesis in magnetospirillum gryphiswaldense. Journal of Bacteriology 83.
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Manganese incorporation into the magnetosome magnetite: magnetic signature of doping. European Journal of Mineralogy 84.
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Keeping nanoparticles fully functional: long-term storage and alteration of magnetite. ChemPlusChem 85.
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A direct biocombinatorial strategy toward next generation, mussel-glue inspired saltwater adhesives. Journal of the American Chemical Society 86.
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Correlative electron and fluorescence microscopy of magnetotactic bacteria in liquid: howard in vivo imaging. Scientific Reports 87.
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Formation of magnetite nanoparticles at low temperature: from superparamagnetic to stable single domain particles. PLoS One 88.
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Nucleation and growth of magnetite from solution. Nature Materials 89.
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Magnetotactic bacteria form magnetite from a phosphate-rich ferric hydroxide via nanometric ferric (oxyhydr)oxide intermediates. Proceedings of the National Academy of Sciences of the United States of America 90.
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Interaction of Proteins Associated with the Magnetosome Assembly in Magnetotactic Bacteria As Revealed by Two-Hybrid Two-Photon Excitation Fluorescence Lifetime Imaging Microscopy Förster Resonance Energy Transfer. The Journal of Physical Chemistry B 91.
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Structural insight into magnetochrome-mediated magnetite biomineralization. Nature 92.
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Selecting for function: solution synthesis of magnetic nanopropellers. Nano Letters 93.
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From magnetotactic bacteria to hollow spirilla-shaped silica containing a magnetic chain. RSC Advances 94.
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7 (3), e33562 (2012)
Interplay of magnetic interactions and active movements in the formation of magnetosome chains. PLoS One 95.
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The magnetosome membrane protein, MmsF, is a major regulator of magnetite biomineralization in Magnetospirillum magneticum AMB-1. Molecular Microbiology 96.
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Peptide-mediated nanoengineering of inorganic particle surfaces: a general route toward surface functionalization via peptide adhesion domains. Journal of the American Chemical Society 97.
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Insight into the assembly properties and functional organisation of the magnetotactic bacterial actin-like homolog, MamK. PLoS One 98.
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Evolution of magnetic anisotropy and thermal stability during nanocrystal-chain growth. Applied Physics Letters 99.
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Magnetite formation via membrane-bound ferritin and an iron(II) species at the cytoplasmic membrane and in magnetosomes of magnetospirillum gryphiswaldense. Journal of Physics: Conference Series